152 results on '"Pei, Shunping"'
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2. High-resolution 3-D lithospheric structure beneath the Qinling-Dabie orogenic belt from joint inversion of receiver functions and ambient noise
3. A global comparison of Vp, Vs, and Vp/Vs structures of the mantle lithosphere beneath major cratons
4. Upper-Mantle Velocity Heterogeneity of Eastern Tibetan Plateau from Teleseismic P-Wave Tomography and Its Tectonic Implications
5. Uppermost Mantle Pn Velocity and Anisotropy Structures Beneath the Sakhalin–Kuril–Kamchatka Region
6. Lower crustal attenuation in northeastern Tibetan Plateau from ML amplitude
7. A new growth model of the northeastern Tibetan Plateau from high-resolution seismic imaging by improved double-difference tomography
8. Crustal and Upper Mantle Attenuation Structure Beneath the Southeastern Tibetan Plateau and Its Implications on Plateau Outgrowth
9. Structure-controlled asperities of the 1920 Haiyuan M8.5 and 1927 Gulang M8 earthquakes, NE Tibet, China, revealed by high-resolution seismic tomography
10. Seismic velocity reduction and accelerated recovery due to earthquakes on the Longmenshan fault
11. High Resolution 3-D Lithosphere Structure Underneath the Qinling-Dabie Orogenic Belt from Combined Inversion of Receiver Functions and Ambient Noise
12. Underthrusting and Pure Shear Mechanisms Dominate the Crustal Deformation Beneath the Core of the Eastern Himalayan Syntaxis as Inferred From High‐Resolution Receiver Function Imaging
13. A global comparison of Vp, Vs, and Vp/Vs structures of the mantle lithosphere beneath major cratons.
14. Publisher Correction: Seismic velocity reduction and accelerated recovery due to earthquakes on the Longmenshan fault
15. The boundary between the Indian and Asian tectonic plates below Tibet
16. Variable Depths of Magma Genesis in the North China Craton and Central Asian Orogenic Belt Inferred From Teleseismic P Wave Attenuation
17. Fluids Triggered the 2021 Mw 6.1 Yangbi Earthquake at an Unmapped Fault: Implications for the Tectonics at the Northern End of the Red River Fault
18. 川藏铁路通麦‒鲁朗段浅层结构背景噪声成像
19. A global comparison of Vp, Vs, and Vp/Vsstructures of the mantle lithosphere beneath major cratons
20. Sn velocity tomography beneath the Himalayan collision zone and surrounding regions
21. Pn wave velocity and anisotropy beneath Pamir and its adjacent regions
22. Variable depths of magma genesis in Eastern Asia inferred from teleseismic P wave attenuation
23. The updated crustal attenuation in North China using ML amplitude tomography
24. Tomographic structure of East Asia: I. No fast (slab) anomalies beneath 660 km discontinuity
25. Tomographic structure of East Asia: II. Stagnant slab above 660 km discontinuity and its geodynamic implications
26. Moho offset beneath the central Bangong-Nujiang suture of Tibetan Plateau
27. Deep structure at northern margin of Tarim Basin
28. Eastward Dipping Style of the Underthrusting Indian Lithosphere Beneath the Tethyan Himalaya Illuminated by P and S Receiver Functions
29. Land subsidence caused by groundwater exploitation in Suzhou City, China
30. Velocity structure of uppermost mantle beneath North China from Pn tomography and its implications
31. Seismic Evidence for Lateral Asthenospheric Flow Beneath the Northeastern Tibetan Plateau Derived From S Receiver Functions
32. Complex N–S variations in Moho depth and Vp/Vs ratio beneath the western Tibetan Plateau as revealed by receiver function analysis
33. Locations of Injection‐Induced Earthquakes in Oklahoma Controlled by Crustal Structures
34. Detailed Configuration of the Underthrusting Indian Lithosphere Beneath Western Tibet Revealed by Receiver Function Images
35. High‐resolution seismic tomography of the 2015 Mw7.8 Gorkha earthquake, Nepal: Evidence for the crustal tearing of the Himalayan rift
36. Seismological Investigations of Two Massive Explosions in Tianjin, China
37. Anisotropic upper crust above the aftershock zone of the 2013Ms 7.0Lushan earthquake from the shear wave splitting analysis
38. Mapping crustal structure beneath southern Tibet: Seismic evidence for continental crustal underthrusting
39. Ductile Gap between the Wenchuan and Lushan Earthquakes Revealed from the Two-dimensional Pg Seismic Tomography
40. 2.5-Dimensional tomography of uppermost mantle beneath Sichuan–Yunnan and surrounding regions
41. Upper mantle deformation beneath central-southern Tibet revealed by shear wave splitting measurements
42. Crustal deformation along the Longmen-Shan fault zone and its implications for seismogenesis
43. Structural control of rupturing of the Mw7.9 2008 Wenchuan Earthquake, China
44. Seismic Tomography of the Arabian-Eurasian Collision Zone and Surrounding Areas
45. S n velocity tomography beneath the Himalayan collision zone and surrounding regions
46. Imaging lithospheric structure of the eastern Himalayan syntaxis: New insights from receiver function analysis
47. Distinct lateral contrast of the crustal and upper mantle structure beneath northeast Tibetan plateau from receiver function analysis
48. Crustal structure of the central Qaidam basin imaged by seismic wide-angle reflection/refraction profiling
49. High-resolution seismic velocity structure and azimuthal anisotropy around the 2010 Ms=7.1 Yushu earthquake, Qinghai, China from 2D tomography
50. High-resolution seismic tomography of the 2015 Mw7.8 Gorkha earthquake, Nepal: Evidence for the crustal tearing of the Himalayan rift.
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